NCV51705MNTWG Gate Drivers by ON Semiconductor

Automotive SiC MOSFET Driver, Low-Side, Single 6 A High-Speed

Status: Active
Series: NCV51705
RoHS: Compliant
Download Datasheet Visit Manufacturer Site View Pricing & Stock

The NCV51705 driver is designed to primarily drive SiC MOSFET transistors. To achieve the lowest possible conduction losses, the driver is capable to deliver the maximum allowable gate voltage to the SiC MOSFET device. By providing high peak current during turn−on and turn−off, switching losses are also minimized. For improved reliability, dV/dt immunity and even faster turn−off, the NCV51705 can utilize its on−board charge pump to generate a user selectable negative voltage rail. For isolated applications, the NCV51705 also provides an externally accessible 5 V rail to power the secondary side of digital or high speed opto isolators.

Where to Buy

Prices starting from US$1.91

Distributor Stock
Logo for RS
RS
from US$1.99
5,950
in stock
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Logo for Newark Electronics
Newark Electronics
from US$2.14
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Logo for Future Electronics
Future Electronics
from US$1.96
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Logo for Avnet America
Avnet America
from US$1.91
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Logo for element14
element14
from US$2.03
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Logo for Richardson RFPD
Richardson RFPD
from US$1.92
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Farnell
from US$2.02
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EBV Elektronik
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Avnet Silica
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Features

High Peak Output Current with Split Output Stages
Extended Positive Voltage Rating up to 28 V Max
User−adjustable Built−in Negative Charge Pump (-3.3 V to -8 V)
Accessible 5 V Reference / Bias Rail
Adjustable Under−Voltage Lockout
Fast Desaturation Function
QFN24 Package 4 x 4 mm
AEC-Qualifiied
Benefits
Allow independent Turn−ON/Turn−OFF Adjustment
Efficient SiC MOSFET Operation during the Conduction Period
Fast Turn−off and Robust dV/dt Immunity
Minimize complexity of bias supply in isolated gate drive applications
Sufficient VGS amplitude to match SiC best performance
Self protection of the design
Small & Low Parasitic Inductance package
For SiC high power modules in HEV/EV
Applications
High Perfomance Inverters
High Power SiC Modules
Traction Inverters
End Products
High Power PFC
On Board Chargers
High Power DC/DC converters

Specifications

Description NCV51705, Automotive Qualified 6A SiC Driver
Compliance AEC Qualified PPAP Capable Pb-free Halide free
Power Switch SiC MOSFET
Number of Outputs 1
Topology Single
Isolation Type Non-Isolated
Drive Source Current Typ (A) 6
Drive Sink Current Typ (A) 6
Turn On Prop. Delay Typ (ns) 25
Turn Off Prop. Delay Typ (ns) 25
Package Type QFNW-24

Alternative Descriptions

NCV51705MNTWG | RS
Mosfet Drivers Ic's Rohs Compliant: Yes |Onsemi NCV51705MNTWG | Newark Electronics
Automotive SiC MOSFET Driver, Low-Side, Single 6 A High-Speed Automotive Qualifi | Future Electronics
SiC MOSFET Driver, Single, Low Side, 6 A, 10 V to 22 V, 25 ns, 24 Pins, WQFN-EP | Avnet America
MOSFET DRIVERS IC'S | element14
GATE DRIVER IC | Richardson RFPD


Frequently Asked Questions

Where can I find additional details, specifications and documents for a NCV51705MNTWG?

Additional datasheets, footprints and schematics for NCV51705MNTWG are listed on our Part Details page. You can also find images and similar parts to NCV51705MNTWG on this page.

What pricing and inventory information can I view?

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What category does NCV51705MNTWG fall under?

The NCV51705MNTWG is listed under Power Management > Gate Drivers.

Can I view similar or alternative parts?

You can view similar parts to NCV51705MNTWG when available in the Gate Drivers range under the specifications section at the bottom of the details page.

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Submit any questions directly to the customer support team of the distributor listing the product. For the NCV51705MNTWG you can contact the distributor directly for product support, shipping queries etc.

Is the NCV51705MNTWG RoHS compliant?

Yes. This part has been flagged as RoHS Compliant by ON Semiconductor.

Which authorised distributors for NCV51705MNTWG have stock available?

Authorised distributors including RS, Newark Electronics, Future Electronics, Avnet America and element14 have stock available or on a lead time for NCV51705MNTWG.

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